Role Analysis of Distributed Generation Towards Transmission Expansion Planning Using MILP

Gessa Firman Febrian, S. P. Hadi, S. Sarjiya
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Abstract

Electricity demand increase as function of population and economic activity growth. To meet the demand growth, one kind of approaches to expand electrical system is to calculate the need of generating unit and the result will be used to determine the needs of transmission line. In this research, a model was developed with focused on transmission line expansion based on Mix Integer Linear Programming method. The objective function was to minimize overall investment cost for transmission and operating cost of all generating units. The developed model was implemented in 6-bus Garver’s test system. Distributed generation implementation impact is also studied in this study in term of network configuration and overall expansion cost. The results show that distributed generation implementation will differ the network configuration and reduce the overall system cost, with overall system cost with and without distributed generation implementation was $106.4 million and $103.18 million respectively.
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基于MILP的分布式发电在输变电规划中的作用分析
电力需求随着人口和经济活动的增长而增长。为了满足电力需求的增长,对电力系统进行扩容的一种方法是计算发电机组的需求,并根据计算结果确定输电线路的需求。本文以混合整数线性规划方法为研究对象,建立了输电线路扩展模型。目标函数是使所有发电机组的输电总投资成本和运行成本最小。该模型已在6总线Garver测试系统中实现。本研究还从网络配置和总体扩展成本两方面研究了分布式发电实施的影响。结果表明,实施分布式发电将改变电网配置,降低系统总体成本,实施和不实施分布式发电的系统总体成本分别为1.064亿美元和1.0318亿美元。
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